Dong L-F, Low P, Dyason J C, Wang X-F, Prochazka L, Witting P K, Freeman R, Swettenham E, Valis K, Liu J, Zobalova R, Turanek J, Spitz D R, Domann F E, Scheffler I E, Ralph S J, Neuzil J
Apoptosis Research Group, School of Medical Science, Griffith University, Southport, Queensland, Australia.
Oncogene. 2008 Jul 17;27(31):4324-35. doi: 10.1038/onc.2008.69. Epub 2008 Mar 31.
Alpha-tocopheryl succinate (alpha-TOS) is a selective inducer of apoptosis in cancer cells, which involves the accumulation of reactive oxygen species (ROS). The molecular target of alpha-TOS has not been identified. Here, we show that alpha-TOS inhibits succinate dehydrogenase (SDH) activity of complex II (CII) by interacting with the proximal and distal ubiquinone (UbQ)-binding site (Q(P) and Q(D), respectively). This is based on biochemical analyses and molecular modelling, revealing similar or stronger interaction energy of alpha-TOS compared to that of UbQ for the Q(P) and Q(D) sites, respectively. CybL-mutant cells with dysfunctional CII failed to accumulate ROS and underwent apoptosis in the presence of alpha-TOS. Similar resistance was observed when CybL was knocked down with siRNA. Reconstitution of functional CII rendered CybL-mutant cells susceptible to alpha-TOS. We propose that alpha-TOS displaces UbQ in CII causing electrons generated by SDH to recombine with molecular oxygen to yield ROS. Our data highlight CII, a known tumour suppressor, as a novel target for cancer therapy.
α-生育酚琥珀酸酯(α-TOS)是癌细胞凋亡的选择性诱导剂,这涉及活性氧(ROS)的积累。α-TOS的分子靶点尚未确定。在此,我们表明α-TOS通过与近端和远端泛醌(UbQ)结合位点(分别为Q(P)和Q(D))相互作用来抑制复合物II(CII)的琥珀酸脱氢酶(SDH)活性。这是基于生化分析和分子建模得出的,结果显示α-TOS与UbQ相比,分别对Q(P)和Q(D)位点具有相似或更强的相互作用能。CII功能失调的CybL突变细胞在α-TOS存在的情况下无法积累ROS并发生凋亡。当用siRNA敲低CybL时也观察到了类似的抗性。功能性CII的重建使CybL突变细胞对α-TOS敏感。我们提出α-TOS取代CII中的UbQ,导致SDH产生的电子与分子氧重新结合以产生活性氧。我们的数据突出了已知的肿瘤抑制因子CII作为癌症治疗的新靶点。